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Compression-Assisted Adaptive ECC and RAID Scattering for NAND Flash Storage Devices

机译:用于NAND闪存设备的压缩辅助自适应ECC和RAID分散

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摘要

NAND flash memory-based storage devices are vulnerable to errors induced by NAND flash memory cells. Error-correction codes (ECCs) are integrated into the flash memory controller to correct errors in flash memory. However, since ECCs show inherent limits in checking the excessive increase in errors, a complementary method should be considered for the reliability of flash storage devices. In this paper, we propose a scheme based on lossless data compression that enhances the error recovery ability of flash storage devices, which applies to improve recovery capability both of inside and outside the page. Within a page, ECC encoding is realized on compressed data by the adaptive ECC module, which results in a reduced code rate. From the perspective of outside the page, the compressed data are not placed at the beginning of the page, but rather is placed at a specific location within the page, which makes it possible to skip certain pages during the recovery phase. As a result, the proposed scheme improves the uncorrectable bit error rate (UBER) of the legacy system.
机译:基于NAND闪存的存储设备易受NAND闪存单元引起的错误的影响。纠错码(ECC)集成到闪存控制器中,以纠正闪存中的错误。但是,由于ECC在检查错误过度增加方面显示出固有的局限性,因此应考虑使用一种补充方法来提高闪存设备的可靠性。在本文中,我们提出了一种基于无损数据压缩的方案,该方案可增强闪存设备的错误恢复能力,该方案适用于提高页面内部和外部的恢复能力。在页面内,自适应ECC模块对压缩数据实现ECC编码,从而降低了编码率。从页面外部的角度来看,压缩数据不会放置在页面的开头,而是放置在页面内的特定位置,这使得在恢复阶段可以跳过某些页面。结果,所提出的方案改善了传统系统的不可校正的误码率(UBER)。

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